• Title/Summary/Keyword: Apodemus agrarius coreae

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G-and C-Banding Pattern Analyses of Korean Rodents: I. Chromosome Banding Patterns of Striped Field Mice (Apodemus agrarius coreae) and Black Rats (R. rattus rufescens)

  • Koh, Hung-Sun
    • The Korean Journal of Zoology
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    • v.25 no.2
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    • pp.81-92
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    • 1982
  • G- and C-banding pattern analyses of striped field mice (Apodemus agrarius coreae) using 17 specimens from four localities in Korea revealed that centromeric heterochromatin results in the variation of No. 1 chromosome pair (telocentri $c_telocentric), i.e., centromeric heterochromatin sometimes appeared to be recognized as short arm. G- and C-banding patterns of four black rats (R. rattus rufescens) from two localities in Korea showed that No. 1 chromosome polymorphism (telocentri $c_telocentric) is due to pericentric inversion. In addition, G- and C-banding patterns of black rats mentioned above are idiogrammed.ammed.

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Variation Pattern of mtDNA among Six Subspecies of Apodemus agrarius(Mammalia, Rodentia) in Korea, China, and Russia (한국, 중국, 러시아에 서식하는 등줄쥐, Apodemus agrarius(포유강, 설치목), 6아종의 미토콘도리아 DNA 절단단편의 변이)

  • 고흥선;안용철;유정원;이우재
    • Animal Systematics, Evolution and Diversity
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    • v.15 no.2
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    • pp.153-164
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    • 1999
  • One hundred and eleven samples of six subspecies of striped field mouse, Apodemus agrarius Pallas from Korea, China and Russia, were used for the analysis of mitochondrial DNA(mtDNA) fragment patterns resulted from the digestion with eight restriction enzymes by blot hybridization technique. All 32 fragments, nine mtDNA haplotypes, and four major subgroups with the mean divergence value of 0.896 to 1.150% were revealed. In summary, three forms are recognized: [I, subspecies chejuensis (Chejudo island, Korea)], [II, subspecies pallescens (southwestern Korea), coreae (central Korea), and septentrionalis (Russia)], and [III, subspecies manchuricus (northeastern China) and pallidior (northern China)], although some samples of subspecies coreae are somewhat different from almost all samples of six subspecies, and some samples of subspecies pallidior are similar with all samples of subspecies septentrionalis to form same haplotype. It is confirmed that A. agrarius chejuensis is a distinct subspecies, that subspecies coreae (including pallescens) is also a distinct subspecies, that subspecies manchuricus and pallidior are synonyms of subspecies ningpoensis, and that subspecies septentrionalis is a synonym of subspecies ningpoensis, and that subspecies septentrionalis is a synonym of subspecies agrarius. Moreover, it seems that A. agrarius shows constant karyotype, minimal variation in mtDNA genotype, and considerable divergence in morphometric characters, although further analyses with additional samples of A. agrarius in Eurasia will be necessary to determine the degree of variation of these taxonomic characters and to clarify subspecies classification as well.

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Sperm Morphology of Two Species of the Genus Apodemus (Rodentia, Mammalia) in Korea (한국산 붉은쥐속 2종의 정자의 형태)

  • 양병국;정현덕고흥선
    • The Korean Journal of Zoology
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    • v.34 no.1
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    • pp.59-63
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    • 1991
  • Sperm morphology of ho species (hpodemus agrarius coreae and Apodemus peninsulae peninsulae) of the genus Apodrmus in Korea was investigated. Two species were similar in six qualitative characters, i. e., head shape, presence of apical ridge, process, cone-like process, and mitochondrial sheath, and the degree of development in outer dense Hber, Lengths of head and midpiece were not different with each other, but length of principal plus end piece was significantly larger (P ≪ 0.001) in hpodemus agrarius coreae than that in hpodemus peninsular peninsulae.

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Morphometric Analyses with 15 Subspecies of Striped Field Mouse, Apodemus agrarius Pallas(Mammalia, Rodentia) from Eurasia (유라시아에서 서식하는 등줄쥐, Apodemus agrarius Pallas (포유 강,설치 목),15아종의 형태 형질의 분석)

  • Hung Sun Koh;G. Tikhonova
    • Animal Systematics, Evolution and Diversity
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    • v.14 no.4
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    • pp.341-355
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    • 1998
  • Thirty one morphometric characters of specimens in 15 subspecies of striped field mouse(Apodemus agrarius Pallas) from Eurasia were analyzed to clarify taxonomic status of these subspecies. Five major subgroups in A. agrarius were revealed: I, a largest-size form, specimens from two southern from other six localities in Korea, subspecies coreae and pallescens; III, the other large-size from, specimens from Astrachan in western Russia, subspecies volgensis; IV, a medium-size form, specimens from 16 localities in eastern Asia(North Korea, China, and eastern Russia), subspecies coreae, manchuricus, pallidior, ningpoensis, and insulaemus; V, a small-size form, specimens from 16 localities in western Asia and Europe (Kazakhstan, Russia, Lithuania, and Ukraine), subspecies tianschanicus, ognevi, agrarius, septentrionalis, nikolski, caucasicus, and karelicus. From this morphometric analyses, the followings are concluded: subspecies chejuensis is a larger-size form, as noted by Johnson and Jones(1955): subspecies pallescens is the synonym of subspecies agrarius, as suggested by Koh(1986): subspecies coreae from Korea is a large-size form and is idistinct from other 12 subspecies in Eurasia: the eastern form of subspecies ningpoensis by Corbet(1978) is a medium-size form o subspecies manchuricus, pallidior, ningpoensis, and insulaemus from eastern Asia (China and eastern Russia), and it includea North Korea specimens: a small-size form from western Asia and Europe(subspecies tianschanicus, ognevi, agrarius, septentrionalis, nikolski, caucasicus, and karelicus) is the western form of subspecies agrarius by Corbet(1978); the other large-size form of subspecies volgensis from western Russia is a distinct subspecies, which differs from the western subspecies agrarius. Therefore, it is concluded that 15 subspecies of A. agrarius can be classifed into five subspecies (chejuensis, coreae, ningpoensis, agrarius, and volgensis), although it is necessary to measure and analyze morphometric characters of specimens of other seven subspecies(albostriatus, maculatus, rubens, kahmanni, henrici, gloveri, and harti) for the complete reclassification of this species).

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Comparative Studies on the Ultrastructures of Non-Ciliated and Ciliated Epithelial Cells in the Ductus Epididymidis of Apodemus agrarius coreae (등줄쥐 (Apodemus agrarius coreae)의 부고환관의 무섬모상피세포와 섬모상피세포의 미세구조에 대한 비교 연구)

  • Lee, Jung-Hun
    • Applied Microscopy
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    • v.28 no.3
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    • pp.345-362
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    • 1998
  • In order to the comparative morphological study of the non-ciliated and ciliated epithelial cells, and to elucidate the process of degeneration of non-ciliated epithelial cell of the ductus epididymidis, Korean striped field mouse, Apodemus agrarius coreae was examined with light and transmission electron microscopes. The morphological characteristics of non-ciliated epithelial cell, the cell types of the caput epididymidis (Cp), corpus epididymidis (Cr) and cauda epididymidis (Cu) were long-columnar, short-columnar and short-cuboudal, respectively. The mitochondria and rough endoplasmic reticulum tended to be broken as they immigrated from Cp to the Cu. The Golgi acted vigorously at the Cp, but the Golgi was inactive in Cr and Cu. The secretory vesicles and lysosomes were increased gradually from Cp to the Cu. The process of degeneration of the non-ciliated epithelial cells observed in the Cp, Cr and Cu epididymidis. The increase of the non-ciliated epithelial cells, and its degeneration were observed more often from Cp to the Cu. The morphological characteristics of the ciliated epithelial cells, the cell types of the Cp, Cr and Cu were long-columnar, short-columnar and short-cuboudal, respecptively like the non-ciliated epithelial cells. The stereocilia was long and slender at the Cp and Cr, while Cu was very short. The pinocytotic vesicles and absorptive vesicles were increased from the Cp to the Cu. Numerous disintergrated products was existed at the Cr including the Cp, but Cu were not observed. A significant amount of lysosomes existed at the Cp and Cr epithelial cells, but they were not observed in Cu epithelial cells.

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Seminiferous Epithelium Cycle and Developmental Stages of Spermatids in the Apodemus agrarius coreae

  • Lee, Jung-Hun
    • Biomedical Science Letters
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    • v.13 no.1
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    • pp.61-69
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    • 2007
  • The cycle of the seminiferous epithelium and the development of spermatids of Apodemus agrarius coreae were observed using a light microscope. The cycle of the seminiferous epithelium was divided into 10 stages, and developing spermatids were subdivided into 10 steps. The Golgi phases occurs the first two steps ($St_1,\;St_2$), and the cap phases had the next two consecutive steps ($St_3$ and $St_4$). The acrosomal phases consisted of steps $5{\sim}8$ ($St_5-St_8$), and the remaining two steps consisted the maturation ($St_9$) and spermiation ($St_{10}$) phases, respectively. Type Ad spetmatogonia are appeared in all stages (I-X). Type Ap spermatogonia appeared from stage I and II, In spermatogonia from stage III, IV and V, and B spermatogonia from stages VI. The leptotene spermatocytes appeared from stage VII, zygotene from stages I, II, VIII, IX and X, pachytene from stage III to VIII, diplotene in stage IX, and meiotic figures and secondary spermatocytes in stage X. These data are considered in relation to interspecific differences in sperm morphology.

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Dopaminergic neurons of the substantia nigra and ventral tegmentum in the stripped field mouse(apodemus agrarius coreae) (야생등줄쥐 흑색질 및 배쪽피개의 dopamine성 신경세포)

  • Jeong, Young-gil;Kim, Kil-soo;Lee, Chul-ho;Yoon, Won-kee;Hyun, Byung-hwa;Oh, Yang-seok;Won, Moo-ho;Kim, Moo-kang
    • Korean Journal of Veterinary Research
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    • v.37 no.3
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    • pp.489-497
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    • 1997
  • The distributions characteristics of neurons displaying immunoreactivity to the catecholamine synthetic enzymes, tyrosine hydroxylase(TH), dopamine-${\beta}$-hydroxylase(DBH), and phenylethanolamine-N-methyltransferase(PNMT) were examined in the adjacent sections of the substantia nigra & ventral tegmentum of the Striped Field Mouse(Apodemus agrarius coreae). None of these cell groups displayed either DBH or PNMT immunoreactivity. Many TH-immunoreactive neurons were present in the substantia nigra & ventral tegmentum. The major dopaminergic cell(TH-positive, DBH- & PNMT-negative) group in the midbrain was present in the pars compacta of substantia nigra and adjacent ventral tegmentum. And smaller dopaminergic cell groups Were found in the pars reticulata of the substantia nigra and central liner nucleus.

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Tyrosine hydroxylase immunoreactive neurons of the olfactory bulb in the stripped field mouse(apodemus agrarius coreae) (야생등줄쥐 후각망울의 Tyrosine hydroxylase 면역반응신경세포)

  • Jeong, Young-gil;Lee, Nam-seob;Kim, Kil-soo;Lee, Chul-ho;Hyun, Byung-hwa;Won, Moo-ho;Kim, Moo-kang
    • Korean Journal of Veterinary Research
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    • v.37 no.3
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    • pp.499-508
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    • 1997
  • The distributions and morphological characteristics of neurons displaying immunoreactivity to the catecholamine synthetic enzymes, tyrosine hydroxylase(TH), dopamine-${\beta}$-hydroxylase(DBH), and phenylethanolamine-N-methyltransferase (PNMT) were examined in the adjacent sections of the olfactory bulb of the Striped Field Mouse(Apodemus agrarius coreae). None of these cell groups displayed either DBH or PNMT immunoreactivity. Many TH-immunoreactive neurons were present in the olfactory bulb. The vast majority of such cells occurred in the glomerular layer as periglomerular cells surrounding the glomeruli. Numerous addtional cells were present in the external plexiform layer, and scattered in the mitral cell layer and internal plexiform layer. Also TH-immunoreactive neurons were found in the glomerular layer and granular layer of the accessory olfactory bulb.

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Morphometric Variation of Six Subspecies of Striped Field Mouse, Apodemus agrarius Pallas(Mammalia, Rodentia), from China and Korea

  • Koh, Hung-Sun;Kim, Young-Ki;Lee, Woo-Jai;Wang, Jinxing;Lu, Haoquan
    • Animal cells and systems
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    • v.1 no.1
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    • pp.25-29
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    • 1997
  • Four external and 27 cranial characters of striped field mice (Apodemus agrarius) from 16 regions in China and Korea, representing six subspecies, were analyzed by multivariate methods. Three subgroups were recognized: the large-size form from Cheju island, Korea (subspecies chejuensis), the middle-size form from the Korean peninsula (subspecies coreae), and the small-size form from China (subspecies manchuricus, pallidior, ningpoensis, insulaemus). It was confirmed that four subspecies of striped field mouse from China can be classified into subspecies ningpoensis, as noted by Corbet (1978), and that subspecies coreae and chjuensis are distinct subspecies, as stated by Jones and Johnson (1965). In the future, morphometric analyses with striped field mice from Europe and Russia will be necessary to confirm subspecies classification of A. agrarius agrarius.

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Systematic Studies of Korean Rodents : II. A Chromosome Analysis in Korean Field Mice, Apodemus peninsulae peninsulae Thomas (Muridae, Rodentia), From Mungyong, with the Comparison of Morphometric Characters of these Korean Field Mice to Symptric Striped Field Mice, A. agrarius coreaee Thomas (한국산 설치류의 계통분류학적 연구 : II. 문경산 흰 넓적다리 붉은쥐, Apodemus peninsulae peninsulae Thomas, 의 염색체 분석 및 문경산 등줄쥐, odemus Apagrarius coreae 와의 형태적 형질의 비교분석)

  • 고흥선
    • Animal Systematics, Evolution and Diversity
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    • v.2 no.1
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    • pp.1-10
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    • 1986
  • 문경산 흰 넓적다리 붉은 쥐, Apodemus peninsulae peninsulae, 의 염색체 핵형 분석과 단변량 및 다변량분석방법들을 사용한 등줄쥐, Apodemus agrarius coreae, 와의 형태적 형질의 비교를 하였다. 흰 넓적다리 붉은 쥐의 염색체수는 2n=50-54R지 수적 변이를 보였다. 차단부 염색체의 수는 48개로 개체간에 일정하였으나 , 중부 염색체의 수는 2-6개의 변이가 나타났다. 형태적 형질의 분석결과는 등줄쥐보다 흰 넓적다리 붉은 쥐가 크다고 판정되었으며 가장 구별이 잘 되는 경구개의 길이였다.

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